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Biomedical subjects

K J Hopkins

Publications and source records attributed to K J Hopkins.

10 recordsLinked to original sources

Cimetidine-nicoumalone interaction in man: stereochemical considerations.

1. The cimetidine-nicoumalone interaction was studied in five subjects who received a single 10 mg oral dose of racemic nicoumalone alone and 3 days into an oral regimen of cimetidine of 200 mg three times daily and 400 mg at night. 2. The concentrations of R(+)- and S(-)-nicoumalone in plasma were measured using a stereospecific h.p.l.c assay; augmentation of prothrombin time was used as a measure of response. 3. Cimetidine increased the rate (but not extent) of absorption of both R(+)- and S(-)-nicoumalone, and reduced the clearance of R(+)-nicoumalone but not that of the S(-)-enantiomer. 4. Cimetidine increased the anticoagulant response produced by nicoumalone in some but not all subjects, despite a consistent effect on the pharmacokinetics of the oral anti-coagulant. 5. Cimetidine appears to produce its effect by stereoselectively inhibiting the elimination of R(+)-nicoumalone.

Acenocoumarol

Rate and extent of absorption of clonidine from a transdermal therapeutic system.

The in-vivo performance of a clonidine transdermal therapeutic system (TTS 3.5 cm2, 2.5 mg) was assessed in 12 healthy normal volunteers. Particular attention was paid to the rate and extent of absorption of clonidine from the TTS dosage form by reference to a 2 h i.v. infusion of clonidine. The absolute bioavailability of clonidine from the TTS dosage form was found to be approximately 60% with clonidine being released from the TTS at a relatively reproducible and consistent rate of 4.32 micrograms h-1 over a 7-day period.

Absorption

Stereospecific assay of nicoumalone: application to pharmacokinetic studies in man.

1. A stereospecific h.p.l.c. assay of nicoumalone in plasma has been developed. 2. The assay was applied to a study in which 20 mg racemic nicoumalone was given orally to three volunteers and blood samples taken for 168 h. 3. The mean pharmacokinetic parameters of the individual enantiomers were: clearance/bioavailability 1.28 1 h-1, R-enantiomer; 17.5 1 h-1, S-enantiomer: volume of distribution/bioavailability 12.5 1, R-enantiomer; 22.6 1, S-enantiomer: terminal half-life 6.8 h, R-enantiomer; 0.91 h, S-enantiomer. 4. The data are consistent with a substantial first-pass hepatic loss of S-nicoumalone.

Acenocoumarol

Comparative effects of ranitidine and cimetidine on the pharmacokinetics and pharmacodynamics of warfarin in man.

Stereochemical aspects of the potential interaction between the oral anticoagulant warfarin and the H2-antagonists, cimetidine and ranitidine, were investigated. A single 25 mg oral dose of racemic warfarin was administered on Day 4 of a randomised 9-day multiple dosing regimen of either cimetidine (800 mg o.d.) ranitidine (300 mg o.d.) or placebo. The degree of anticoagulation produced by warfarin was quantificated by the determination of both the prothrombin and Factor VII clotting times. Ranitidine had no effect on the pharmacodynamics of warfarin or the pharmacokinetics of the individual warfarin enantiomers. Cimetidine whilst producing no statistically significant change in the pharmacodynamics of warfarin or in the pharmacokinetics of the pharmacologically more potent (S) enantiomer, did produce a statistically significant decrease in the clearance of the (R) enantiomer, possibly due to metabolic inhibition of this species.

Adult

Enoxacin-warfarin interaction: pharmacokinetic and stereochemical aspects.

The interaction between the new quinoline-azaquinoline antibiotic enoxacin and the oral anticoagulant warfarin was investigated in six healthy male volunteers. Enoxacin was found not to affect the hypoprothrombinemic response produced by warfarin but did produce a decrease in the clearance of the less pharmacologically potent enantiomer of warfarin, (R)-warfarin. The decreased clearance of (R)-warfarin produced by concomitant enoxacin administration was found to be a consequence of inhibition by enoxacin of the (R)-6-hydroxywarfarin metabolic pathway.

Adult

Pharmacokinetics of imipenem and cilastatin after their simultaneous administration to the elderly.

The pharmacokinetics of imipenem and cilastatin were studied in a group of six healthy elderly male volunteers following the combined intravenous administration of 500 mg imipenem and 500 mg cilastatin sodium as either single or multiple (6 hourly for 6 days) 20 min constant-rate infusions. The pharmacokinetics of both imipenem and cilastatin in the elderly were similar to those of young individuals with mild renal failure (Verpooten et al., 1984). There was no change in the pharmacokinetics of either species with time following multiple-dosing. Correlations existed between total clearance and the glomerular filtration-rate (51Cr-EDTA) for both imipenem and cilastatin.

Aged